论文标题

六角硼硝化物作为碳纳米管光子学的理想底物

Hexagonal boron nitride as an ideal substrate for carbon nanotube photonics

论文作者

Fang, N., Otsuka, K., Ishii, A., Taniguchi, T., Watanabe, K., Nagashio, K., Kato, Y. K.

论文摘要

六角硼硝化物被广泛用作电子和光子设备中二维材料的底物。在这里,我们证明了二维六角硼硝化硼也是一维单壁碳纳米管的理想底物。直接连接到六角硼硝化物的纳米管在室温下显示出明亮的光致发光,线宽狭窄,可与空气悬浮的纳米管相当。使用光致发光激发光谱法,我们明确地通过在与硝酸硼接触之前和之后跟踪氮化硼的纳米管的手势。尽管六角硼硝化氢的介电常数较低,并且仅附着在纳米管的一侧,但我们观察到,光偏移的光降降量高达约50 mev,距离空气悬浮的纳米管。我们还对超过400个试管进行统计测量,发现红移取决于管直径。这项工作通过利用六角硼硝酸盐底物为全稳态碳纳米管光子设备开辟了新的可能性。

Hexagonal boron nitride is widely used as a substrate for two-dimensional materials in both electronic and photonic devices. Here, we demonstrate that two-dimensional hexagonal boron nitride is also an ideal substrate for one-dimensional single-walled carbon nanotubes. Nanotubes directly attached to hexagonal boron nitride show bright photoluminescence with narrow linewidth at room temperature, comparable to air-suspended nanotubes. Using photoluminescence excitation spectroscopy, we unambiguously assign the chiralities of nanotubes on boron nitride by tracking individual tubes before and after contact with boron nitride. Although hexagonal boron nitride has a low dielectric constant and is attached to only one side of the nanotubes, we observe that optical transition energies are redshifted as much as ~50 meV from the air-suspended nanotubes. We also perform statistical measurements on more than 400 tubes, and the redshifts are found to be dependent on tube diameter. This work opens up new possibilities for all-solid-state carbon nanotube photonic devices by utilizing hexagonal boron nitride substrates.

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